研究目的
Investigating the use of a nanocomposite obtained by in-situ deposition of CdS nanocrystals on mesoporous silica nanospheres (MSNs) for the electrochemical immunoassay of human immunoglobulin G (HIgG).
研究成果
The method demonstrates high sensitivity and specificity for HIgG detection, with potential applications in early disease diagnosis. The MCN/CdS nanocomposite shows promise for further biosensing applications.
研究不足
The multi-step manipulations during the nanomaterial synthesis and sandwich immunoreaction require a relatively long time and substantial skills.
1:Experimental Design and Method Selection:
The study involves the in-situ deposition of CdS nanocrystals on mesoporous silica nanospheres (MSNs) to create a nanocomposite for electrochemical immunoassay. The method utilizes anodic stripping voltammetry for detection.
2:Sample Selection and Data Sources:
Human immunoglobulin G (HIgG) is used as the model protein analyte. The nanocomposite is prepared and characterized using various techniques.
3:List of Experimental Equipment and Materials:
Includes MSNs, CdS nanocrystals, magnetic beads, and electrochemical workstation among others.
4:Experimental Procedures and Operational Workflow:
The nanocomposite is prepared, characterized, and used in a sandwich immunoassay format at magnetic beads. Cd(II) ions are released and detected by anodic stripping voltammetry.
5:Data Analysis Methods:
The anodic stripping voltammetry data is analyzed to determine the concentration of HIgG.
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JEOL 2100 transmission electron microscope
2100
JEOL
Obtaining TEM images
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Thermo Scientific Escalab 250Xi spectrometer
250Xi
Thermo Scientific
Performing XPS measurements
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F-4500 fluorescence spectrophotometer
4500
Hitachi
Obtaining fluorescence spectra
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CHI 660E electrochemical workstation
660E
Chenhua
Performing stripping voltammetric experiments
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Micromeritics ASAP 2020 HD 88 apparatus
2020 HD 88
Micromeritics
N2 adsorption isotherm characterization
-
UV-1901 spectrophotometer
1901
Purkinje
Obtaining UV-vis absorption spectra
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